1. Field of the Invention
The present invention relates to an illumination apparatus that uses a light emitting diode as a light source, more particularly to a light emitting diode illumination apparatus that can effectively disperse the heat produced by the heat source of the light emitting diode illumination apparatus.
2. Description of the Related Art
As illumination apparatus is an indispensable item for our daily life, and the requirements for modernization and life quality are different, the level of requiring illumination apparatus varies. Tungsten light bulbs and mercury lamps are common traditional illumination apparatus, and the tungsten light bulb converts a vast majority of electric energy into radiated heat during the light emitting process of the tungsten light bulb, and thus the light emitting performance is not high, but the quantity of radiated heat is large. Therefore, the tungsten light bulb is not applicable in the areas with a hotter climate. As to the mercury lamp, although it has a better light emitting performance than the tungsten light bulb, the mercury coated on the internal walls of the lamp causes environmental pollutions when the lamp is dumped. In recent years, many developed countries aggressively invest in the research and development plan of optoelectronic semiconductors, a light emitting diode is developed to replace traditional illumination apparatus.
Light emitting diode is a semiconductor device, and has a better longevity. An LED also features a high efficiency of converting electric energy into light energy, and thus LED requires less power consumption. Compared with traditional light bulbs, the light emitting diode bulb has a lifetime about 50˜100 times as that of the traditional light bulbs, and the power consumption of LED is about ⅓˜⅕ of that of the traditional light bulbs.
Since a white LED light has the foregoing advantages, therefore the LED lamp is expected to replace tungsten light bulbs and mercury lamps in the 21st century and become a new light source for an illumination concurrently implementing the power-saving and environmental protection concepts. However, a general light emitting diode 1 integrates several light emitting diodes 11 (as shown in
The primary objective of the present invention is to provide a light emitting diode illuminating apparatus that uses a heat dissipating device and a substrate in contact with each other under normal conditions to conduct a heat source from the substrate to the heat dissipating device and effectively disperse the heat source from the heat dissipating device, so as to maintain the light emitting efficiency of each light emitting diode.
To achieve the foregoing objective, the light emitting diode illuminating apparatus of the invention comprises a light bulb base, a heat dissipating device, a plastic lid, a drive substrate, a metal substrate, a circular insulating base and a casing; wherein the heat dissipating device and the plastic lid are fixed onto the light bulb base; the plastic lid has a circular groove for accommodating the heat dissipating device and the drive substrate; the drive substrate is fixed at the bottom of the circular groove and installs a plurality of electronic components; the heat dissipating device is coated with thermal conductive grease at the top and is in contact with the metal substrate under normal conditions; the metal substrate has a plurality of drive substrates for controlling the light emitting diode; the circular groove has a circular insulating base at the top and a circular edge disposed at the circular insulating base for pressing the drive substrate below, while the internal chamber of the circular insulating base presses and fixes the metal substrate into position; and the circular insulating base has an external casing. A circuit of the drive substrate is connected to a connector, such that the external power supply is connected to a circuit of the drive substrate by the connector, and the drive substrate produces a voltage for each light emitting diode on the metal substrate, so as to achieve the illumination function.
Referring to
a light bulb base 20, having a groove base 21 for installing different components and a connector 22 disposed at the bottom for electrically connecting an external circuit, and the groove base 21 has an internal thread 81 for securing a heat dissipating device 30 and a plastic lid 40 onto the groove base 21 in sequence;
a heat dissipating device 30, having an end coupled into the groove base 21 of the light bulb base 20, and the heat dissipating device 30 has an external thread 82 corresponding to the internal thread 81 in the groove base 21, and the other end being contacted with a metal substrate 50 through a thermal conductive grease under normal conditions, and the contact surface of the heat dissipating device 30 and the metal substrate 50 can be engaged with the fixing pillar 31 and the fixing groove 51 according to the preferred embodiment as shown in the figure, and the fixing pillar 31 and the fixing groove 51 are coated with a thermal conductive grease to latch the fixing pillar 31 into the fixing groove 51;
a plastic lid 40, fixed into the groove base 21 and the plastic lid at its lower side having an external thread 82 corresponding to the internal thread 81 of the groove base 21, and the plastic lid 40 having a circular groove 41 for accommodating the heat dissipating device 30 and a drive substrate 70, and the circular groove 41 has a retaining base disposed at an appropriate position on the bottom for fixing the drive substrate 70 into position;
a metal substrate 50 made of a metal material such as a good heat dissipating material or an aluminum based copper clad laminate installed in a circular groove 41 and having a plurality of light emitting diodes 60, and each light emitting diode being controlled by a drive substrate 70, and the drive substrate 70 being coupled with a connector 22;
a circular insulating base 91, having a through hole 92 thereon and being disposed above the circular groove 41, and an internal thread 81 and an external thread 82 are disposed between the circular groove 41 and the circular insulating base 91, such that the circular insulating base 91 is screwed into the circular groove 41, and the circular edge 911 of the circular insulating base 91 can press onto the bottom of the drive substrate 71 and the metal substrate 50, so as to secure the metal substrate 50 onto the heat dissipating device 30, and the circular insulating base 91 has an external casing 93; and
an external casing 93, being an arc cover body for wrapping and sealing each light emitting diode 60 therein, which could be made of a high transmission material to increase the brightness of illumination.
Referring to
It is noteworthy that the invention uses a heat dissipating device 30 (could be a cylinder made of a ceramic material) in contact with the metal substrate 50 under normal conditions, such that the heat source produced by the light emitting diodes 60 during the light emission is conducted from the metal substrate 50 to the heat dissipating device 30, and then the heat source is dispersed effectively from the heat dissipating device 30 for maintaining the light emission efficiency of each light emitting diode 60.
Further, the heat dissipating device 30 and the plastic lid 40 can further install a plurality of heat dissipating holes 32, 43 as shown in
In summation of the description above, the present provides a light emitting diode illumination apparatus that can effectively disperse the heat source produced by the light emitting diodes during the light emission, which complies with the patent application requirements. The description and its accompanied drawings are used for describing preferred embodiments of the present invention, and it is to be understood that the invention is not limited thereto. To the contrary, it is intended to cover various modifications and similar arrangements and procedures, and the scope of the appended claims therefore should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements and procedures.
Number | Name | Date | Kind |
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6787999 | Stimac et al. | Sep 2004 | B2 |
6948829 | Verdes et al. | Sep 2005 | B2 |
7059748 | Coushaine et al. | Jun 2006 | B2 |
Number | Date | Country | |
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20060232974 A1 | Oct 2006 | US |